AI Article Synopsis

  • Cilia and flagella are essential cellular structures that use microtubules for movement, with radial spokes playing a crucial role in their beating motion through signal transduction between dyneins and microtubules.
  • Researchers isolated radial spoke proteins from Chlamydomonas and identified RSP15, a protein that appears to be important in mouse sperm functionality, although its mammalian counterpart was previously unknown.
  • The study reveals that the gene Lrrc23 encodes a homolog of RSP15 in mice, and its knockout leads to male infertility due to sperm motility issues while not significantly affecting cilia function.

Article Abstract

Cilia and flagella are ancient structures that achieve controlled motor functions through the coordinated interaction based on microtubules and some attached projections. Radial spokes (RSs) facilitate the beating motion of these organelles by mediating signal transduction between dyneins and a central pair (CP) of singlet microtubules. RS complex isolation from Chlamydomonas axonemes enabled the detection of 23 radial spoke proteins (RSP1-RSP23), although the roles of some radial spoke proteins remain unknown. Recently, RSP15 has been reported to be bound to the stalk of RS2, but its homolog in mammals has not been identified. Herein, we show that Lrrc23 is an evolutionarily conserved testis-enriched gene encoding an RSP15 homolog in mice. We found that LRRC23 localizes to the RS complex within murine sperm flagella and interacts with RSPH3A and RSPH3B. The knockout of Lrrc23 resulted in male infertility due to RS disorganization and impaired motility in murine spermatozoa, whereas the ciliary beating was not significantly affected. These data indicate that LRRC23 is a key regulator that underpins the integrity of the RS complex within the flagella of mammalian spermatozoa, whereas it is dispensable in cilia. This article has an associated First Person interview with the first author of the paper.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10658914PMC
http://dx.doi.org/10.1242/jcs.259381DOI Listing

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